Roles of Cocatalysts in Biomass Photo(electro)refining

Author:

Li Zheng1,Li Wenping1,Wang Jiu1,Jing Liquan1,Li Pandeng1,Zhang Hongguang1,Fan Yingying1,Wang Hui1,Chen Zhangxin12,Hu Jinguang1ORCID

Affiliation:

1. Department of Chemical and Petroleum Engineering University of Calgary 2500 University Drive, NW Calgary Alberta T2N 1N4 Canada

2. Eastern Institute of Technology Ningbo Zhejiang 315200 China

Abstract

AbstractPhotosynthesis converts solar energy, carbon dioxide, and water into biomass, offering a renewable energy and chemical source. Biomass photo(electro)refining (BPeR) emerges as a sustainable alternative to petrochemicals for fuel and chemical production. However, BPeR faces challenges due to photocatalyst limitations, necessitating the integration of cocatalysts. Cocatalysts significantly impact the efficiency, selectivity, and durability of BPeR reactions, yet their roles require systematic elucidation and understanding. This review explores how cocatalysts impact the carbon bond functionalization, cleavage, and formation in biomass and its derivatives. It discusses their crucial roles in charge carrier generation, separation, and transportation, particularly in catalyzing surface reactions such as hydrogen‐involved reactions, generation, and manipulation of oxygen or carbon radicals, and the C─C/O/H bond transformations. Additionally, it outlines challenges and prospects for developing cocatalysts to enhance BPeR efficiency and durability, boosting the viability of biomass as a sustainable source of energy and materials.

Funder

Canada First Research Excellence Fund

Publisher

Wiley

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